A Targeted Drug Delivery System For Treatment Of Bone Metastasis
Funder
National Health and Medical Research Council
Funding Amount
$243,607.00
Summary
The most common site where cancer spreads is the bone. Once it happens, it can dramatically affect patient’s quality of life and chance of survival. Current treatments are mostly palliative or associate with acute side effects due to systematic administration of anticancer drugs and their inability to selectively target the diseased area. This study aims to develop a nanocarrier that can uptake, protect and deliver anticancer drugs to the affected site in bone.
A Self-assembling And Self-adjuvanting Nanoparticular Therapeutic Vaccine Against Cervical Cancer
Funder
National Health and Medical Research Council
Funding Amount
$387,858.00
Summary
One in every three Australians will be diagnosed with cancer in their lifetime according to the Australia Cancer Foundation. The proposed project aims to develop pathogen-like bullets based on self-organized nanoparticles which would become a strong weapon against cervical cancer.
Visualisation And Early Prediction Of ROS-mediated Treatment Response In Liver Cancer By A Novel Nanoplatform
Funder
National Health and Medical Research Council
Funding Amount
$334,224.00
Summary
Change of tumour microenvironment has potential to serve as an early predictor of drug efficacy. This proposed project aims to develop a new technology to accurately measure tumour microenvironment during treatment, and to explore the correlation between this potential predicator and tumour growth. This technology would significantly improve the patient prognosis by revealing non-response to chemotherapeutics early and allowing the timely administration of alternative therapies.
Anti-metastasis Therapy Via Nanoparticle Mediated Drug Delivery
Funder
National Health and Medical Research Council
Funding Amount
$835,199.00
Summary
Most cancer deaths are caused by tumours that have spread to other vital organs, a process called metastasis. The common treatment for metastatic disease is chemotherapy, but the amount given is limited by toxicity to the patient. In this project, we are developing a way of delivering the therapies only to tumour cells, thereby sparing normal tissues. We are using nanoparticles that have a molecule on their surface that directs the therapy directly to tumour cells.
Design And Application Of New Nanomaterials Theranostic Platforms For Targeted Treatment Of Cancer
Funder
National Health and Medical Research Council
Funding Amount
$530,626.00
Summary
The project aims to develop intelligent drugs that attract to malignant tumors like magnets. These powerful, next-generation chemotherapy drugs seek out cancerous cells, allowing physicians to see exactly where tumours lie. Nanoparticles inside the drugs then switch on upon contact with X-ray radiation beams. This new method, which can diagnose, deliver targeted therapy and monitor the response to therapy all at the same time, would reduce the amount of radiation needed to kill cancer cells.
The Use Of Gene-Silencing Nanodrugs To Inhibit Lung Cancer Growth
Funder
National Health and Medical Research Council
Funding Amount
$452,950.00
Summary
Lung cancer accounts for the most cancer deaths worldwide. This research proposal will use state-of-the-art nanomedicines designed to penetrate lung tumours and suppress a gene which drives cancer growth and resistance to chemotherapy drugs. Our results could underpin new approaches that revolutionise more effective and less toxic treatments for a highly lethal malignancy.
Immuno-polymeric Drugs For Prostate Cancer Therapy
Funder
National Health and Medical Research Council
Funding Amount
$626,995.00
Summary
Prostate cancer is the most common cancer in men over 50 and the second most frequent cause of cancer deaths in Western society. Docetaxel is the first line of chemotherapy when other intervention strategies are unsuccessful, but 30% of patients suffer from severe side-effects. To address this problem, we will utilise carriers for docetaxel that directly target prostate tumours using a novel antibody approach. This increases accumulation at the tumour site while decreasing off-target toxicity.